Polaris Semiconductor LLC — Department of Defense STTR Phase I: AF20C-TCSO1

Polaris Semiconductor LLC — STTR Phase I award from Department of Defense.

Amount
$50,000
Agency
Department of Defense · Air Force
Program / Phase
STTR · Phase I
Topic
AF20C-TCSO1
Solicitation
X20.C
NAICS
Place of performance
VA
Period
2021-02-05 → 2021-05-08

Description

Polaris Semiconductor has pioneered a voltage regulator technology which can efficiently raise and lower DC voltage with zero electromagnetic interference (EMI) and an extremely compact footprint. This overcomes long-standing pain-points associated with incumbent solutions based on switching regulators, including drawbacks associated with RF signature, high component count, large footprint and excessive weight. This project will support targeted R&D in collaboration with Arizona State University (ASU) which builds upon Polaris Semiconductor’s existing technology to develop a radiation hard design of our voltage regulator, with the potential to provide disruptive capabilities in demanding space applications. Our technology is based upon a novel linear voltage regulator architecture including a unique monolithic optocoupler (MLOC) component, which converts voltage using photons. This allows our device to break the fundamental performance limits for a linear voltage regulator, achieving functionality presently only available using switching approaches. Our Phase I project will use experimental studies to measure the radiation degradation in existing Polaris Semiconductor MLOC components, and detailed optoelectronic device modeling to understand the degradation. These studies will be used to design a new generation of MLOC components able to withstand harsh radiation environments found in space. The new designs will then be combined with existing voltage regulator IC designs featuring the highly radiation tolerant SOI MESFET technology developed by ASU and their spinout, RF Micropower. Detailed design work and performance predictions will be carried out using in-depth SPICE circuit simulations. These designs will form the basis of prototype voltage regulator IC demonstrations in Phase II with a range of up-conversion and down-conversion combinations. Our research will combine the design, modeling, and circuit-level expertise of Polaris Semiconductor with the world-class semiconductor research facilities of ASU, building on a successful existing collaboration to develop Polaris Semiconductor technology. Our team will also perform extensive customer discovery in Phase I, connecting with key decision makers in the Air Force to learn more about their specific needs, requirements, and end-use applications, as well as interviewing key industry players to identify current trends, potential stakeholders and test our value proposition hypotheses. If we are successful, our technology will enable a six-fold reduction in footprint and component count over existing switching-based solutions for DC-DC conversion whilst achieving high intrinsic radiation tolerance for harsh space environments.